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Ground Water Flow in a Desert Basin: Challenges of Simulating Transport of Dissolved Chromium

机译:荒漠盆地的地下水流:模拟溶解铬的迁移所面临的挑战

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A large chromium plume that evolved from chromium releases in a valley near the Mojave River was studied to understand the processes controlling fate and migration of chromium in ground water and used as a tracer to study the dynamics of a basin and range ground water system. The valley that was studied is naturally arid with high evap-otranspiration such that essentially no precipitation infiltrates to the water table. The dominant natural hydrogeologic processes are recharge to the ground water system from the Mojave River during the infrequent episodes when there is flow in the river, and ground water flow toward a playa lake where the ground water evaporates. Agricultural pumping in the valley from the mid-1930s to the 1970s significantly altered ground water flow conditions by decreasing water levels in the valley by more than 20 m. This pumping declined significantly as a result of dewatering of the aquifer, and water levels have since recovered modestly. The ground water system was modeled using MODFLOW, and chromium transport was simulated using MT3D. Several innovative modifications were made to these modeling programs to simulate important processes in this ground water system. Modifications to MODFLOW include developing a new well package that estimates pumping rates from irrigation wells at each time step based on available drawdown. MT3D was modified to account for mass trapped above the water table when the water table declines beneath nonirrigated areas and to redistribute mass to the system when water levels rise.
机译:研究了从莫哈韦河附近的山谷中释放出的铬释放出的大量铬羽,以了解控制地下水中铬的命运和迁移的过程,并用作示踪剂研究流域和范围地下水系统的动力学。被研究的山谷自然是干旱的,具有很高的蒸发蒸腾作用,因此基本上没有降水渗入地下水位。主要的自然水文地质过程是在河流中不频繁发生的情况下,从莫哈韦河中补给地下水系统,然后地下水流向地下​​水蒸发的普拉亚湖。从1930年代中期到1970年代,山谷中的农业抽水使山谷中的水位降低了20 m以上,从而极大地改变了地下水的流动状况。由于含水层的脱水,抽水量明显下降,此后水位有所回升。使用MODFLOW对地下水系统进行建模,并使用MT3D对铬的迁移进行模拟。对这些建模程序进行了一些创新的修改,以模拟该地下水系统中的重要过程。对MODFLOW的修改包括开发一个新的油井套件,该套件根据可用的用水量在每个时间步长估算灌溉井的抽水率。 MT3D进行了修改,以解决当地下水位下降到非灌溉区域以下时被困在地下水位上方的质量,并在水位上升时将质量重新分配给系统。

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